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Simultaneous regulation on coordination environment and interfacial chemistry via taurine for stabilized Zn metal anode

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摘要 Aqueous Zn-ion batteries(AZIBs)are the potential options for the next-generation energy storage scenarios due to the cost effectiveness and intrinsic safety.Nevertheless,the industrial application of AZIBs is still impeded by a series of parasitic reactions and dendrites at zinc anodes.In this study,taurine(TAU)is used in electrolyte to simultaneously optimize the coordination condition of the ZnSO4electrolyte and interfacial chemistry at the anode.TAU can preferentially adsorb with the zinc metal and induce an in situ stable and protective interface on the anode,which would avoid the connection between H_(2)O and the zinc metal and promote the even deposition of Zn^(2+).The resulting Zn//Zn batteries achieve more than 3000 hours long cyclic lifespan under 1 mA cm^(-2)and an impressive cumulative capacity at 5 mA cm^(-2).Moreover,Zn//Cu batteries can realize a reversible plating/stripping process over 2,400cycles,with a desirable coulombic efficiency of 99.75%(1 mA cm^(-2)).Additionally,the additive endows Zn//NH_(4)V_(4)O_(10)batteries with more stable cyclic performance and ultrafast rate capability.These capabilities can promote the industrial application of AZIBs.
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第11期343-350,I0008,共9页 能源化学(英文版)
基金 supported by the State Key Laboratorys of Electrical Insulation and Power Equipment(EIPE23308) the Young Talent Recruiting Plans of Xi’an Jiaotong University(DQ6J012) the Fundamental Research Funds for the Central Universities(xtr042021008,xzy022022049) the Natural Science Basic Research Plan in Shaanxi Province of China(2023-JC-QN-0587) the“Young Talent Support Plan”of Xi’an Jiaotong University。
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